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Dive into the research topics where Shane D Beattie is active.

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Featured researches published by Shane D Beattie.


Scientific Reports | 2016

Towards High Capacity Li-ion Batteries Based on Silicon-Graphene Composite Anodes and Sub-micron V-doped LiFePO4 Cathodes

Melanie Loveridge; Michael Jonathan Lain; Ian Johnson; Alexander J. Roberts; Shane D Beattie; R. J. Dashwood; Jawwad A. Darr; Rohit Bhagat

Lithium iron phosphate, LiFePO4 (LFP) has demonstrated promising performance as a cathode material in lithium ion batteries (LIBs), by overcoming the rate performance issues from limited electronic conductivity. Nano-sized vanadium-doped LFP (V-LFP) was synthesized using a continuous hydrothermal process using supercritical water as a reagent. The atomic % of dopant determined the particle shape. 5 at. % gave mixed plate and rod-like morphology, showing optimal electrochemical performance and good rate properties vs. Li. Specific capacities of >160 mAh g−1 were achieved. In order to increase the capacity of a full cell, V-LFP was cycled against an inexpensive micron-sized metallurgical grade Si-containing anode. This electrode was capable of reversible capacities of approximately 2000 mAh g−1 for over 150 cycles vs. Li, with improved performance resulting from the incorporation of few layer graphene (FLG) to enhance conductivity, tensile behaviour and thus, the composite stability. The cathode material synthesis and electrode formulation are scalable, inexpensive and are suitable for the fabrication of larger format cells suited to grid and transport applications.


Journal of Power Sources | 2015

Latest advances in the manufacturing of 3D rechargeable lithium microbatteries

Stefania Ferrari; Melanie Loveridge; Shane D Beattie; Marcus Jahn; R. J. Dashwood; Rohit Bhagat


Journal of Power Sources | 2016

Understanding capacity fade in silicon based electrodes for lithium ion batteries using three electrode cells and upper cut-off voltage studies

Shane D Beattie; Melanie Loveridge; Michael Jonathan Lain; Stefania Ferrari; Bryant J. Polzin; Rohit Bhagat; R. J. Dashwood


Journal of Power Sources | 2018

Lithium ion batteries (NMC/graphite) cycling at 80 °C: Different electrolytes and related degradation mechanism

Ronny Genieser; Stefania Ferrari; Melanie Loveridge; Shane D Beattie; Richard Beanland; Houari Amari; Geoffrey D. West; Rohit Bhagat


Electrochimica Acta | 2017

Investigation of cycling-induced microstructural degradation in silicon-based electrodes in lithium-ion batteries using X-ray nanotomography

Oluwadamilola O. Taiwo; Melanie Loveridge; Shane D Beattie; Donal P. Finegan; Rohit Bhagat; Daniel J.L. Brett; Paul R. Shearing


Journal of Power Sources | 2018

Corrigendum to ‘Lithium ion batteries (NMC/graphite) cycling at 80 °C: Different electrolytes and related degradation mechanism’ [J. Power Sources 373 (2017) 172–183]

Ronny Genieser; Stefania Ferrari; Melanie Loveridge; Shane D Beattie; Richard Beanland; Houari Amari; Geoffrey D. West; Rohit Bhagat


18th International Meeting on Lithium Batteries (June 19-24, 2016) | 2016

Influence of the Electrolyte Composition on Li-Ion Batteries Stored and Cycled at 80 °C

Ronny Genieser; Shane D Beattie; Rohit Bhagat; R. J. Dashwood


18th International Meeting on Lithium Batteries (June 19-24, 2016) | 2016

In-Operando X-Ray Diffraction of Na-Ion Batteries

Nikita Hall; Michael Jonathan Lain; Emma Kendrick; Robert Gruar; Shane D Beattie


ECS Conference on Electrochemical Energy Conversion & Storage with SOFC-XIV (July 26-31, 2015) | 2015

Identification of Failure Mechanisms in Si Electrodes for Li-Ion Batteries

Shane D Beattie; Melanie Loveridge


ECS Conference on Electrochemical Energy Conversion & Storage with SOFC-XIV (July 26-31, 2015) | 2015

Studies of Anomalous Diffusion in Composite Silicon Anodes

Michael Jonathan Lain; Shane D Beattie; Melanie Loveridge; Rohit Bhagat; R. J. Dashwood

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Bryant J. Polzin

Argonne National Laboratory

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